<p>Potassium (K) is essential for the productivity of tropical grasses, but its optimal supply remains unclear. This study evaluated the effects of K on gas exchange, photosynthetic rate (A), forage production (FP), and root development (RP) in <i>Panicum maximum</i> cultivars. The experiment was conducted using a randomized block design in a 6 × 4 factorial scheme (six cultivars: Tanzânia, Quênia, Mombaça, Zuri, Massai and Tamani; and four K rates: 0, 205, 410 and 820&#xa0;mg dm<sup>−3</sup>). There was interaction between cultivars and K rates for A and stomatal conductance (g<sub>s</sub>), with linear increases in A for all cultivars. The g<sub>s</sub> response in the Zuri cultivar was quadratic, with a maximum of 5.32&#xa0;mmol m<sup>−2</sup>&#xa0;s<sup>−1</sup> at the dose of 410&#xa0;mg dm<sup>−3</sup>&#xa0;K, and linear for the other cultivars. The CO<sub>2</sub> concentration (Ci) and leaf temperature (Tleaf) were not influenced by the K dose or by the cultivars, maintaining an average of 129.28&#xa0;ppm and 29.32&#xa0;°C, respectively. Transpiration (E) increased by 0.018&#xa0;mmol m<sup>−2</sup>&#xa0;s<sup>−1</sup> with increasing K doses. The chlorophyll content fitted a quadratic model, with a maximum of 35 SPAD at the dose of 530&#xa0;mg dm<sup>−3</sup>. The FP increased linearly for all cultivars, with the highest FP in the cultivars Quênia, Mombaça and Zuri. Increasing K doses improved A and g<sub>s</sub>, reflecting in higher FP. The cultivars Quênia and Mombaça showed the greatest increases in FP up to 820&#xa0;mg dm<sup>−3</sup>&#xa0;K, while the maximum efficiency for RP occurred between 205 and 410&#xa0;mg dm<sup>−3</sup>, suggesting that excessive K supply may not proportionally increase root development.</p>

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Gas exchange and productivity responses of Panicum maximum cultivars to increasing soil potassium levels in a greenhouse study

  • Emmanuel Lievio de Lima Véras,
  • Gelson dos Santos Difante,
  • Alexandre Romeiro de Araújo,
  • Manuel Claudio Motta Macedo,
  • Denise Baptaglin Montagner,
  • Valéria Pacheco Batista Euclides,
  • Jéssica Gomes Rodrigues,
  • Juliana Caroline Santos Santana,
  • Gabriela Oliveira de Aquino Monteiro,
  • Marislayne de Gusmão Pereira,
  • Paulo Eduardo Teodoro,
  • Antonio Leandro Chaves Gurgel

摘要

Potassium (K) is essential for the productivity of tropical grasses, but its optimal supply remains unclear. This study evaluated the effects of K on gas exchange, photosynthetic rate (A), forage production (FP), and root development (RP) in Panicum maximum cultivars. The experiment was conducted using a randomized block design in a 6 × 4 factorial scheme (six cultivars: Tanzânia, Quênia, Mombaça, Zuri, Massai and Tamani; and four K rates: 0, 205, 410 and 820 mg dm−3). There was interaction between cultivars and K rates for A and stomatal conductance (gs), with linear increases in A for all cultivars. The gs response in the Zuri cultivar was quadratic, with a maximum of 5.32 mmol m−2 s−1 at the dose of 410 mg dm−3 K, and linear for the other cultivars. The CO2 concentration (Ci) and leaf temperature (Tleaf) were not influenced by the K dose or by the cultivars, maintaining an average of 129.28 ppm and 29.32 °C, respectively. Transpiration (E) increased by 0.018 mmol m−2 s−1 with increasing K doses. The chlorophyll content fitted a quadratic model, with a maximum of 35 SPAD at the dose of 530 mg dm−3. The FP increased linearly for all cultivars, with the highest FP in the cultivars Quênia, Mombaça and Zuri. Increasing K doses improved A and gs, reflecting in higher FP. The cultivars Quênia and Mombaça showed the greatest increases in FP up to 820 mg dm−3 K, while the maximum efficiency for RP occurred between 205 and 410 mg dm−3, suggesting that excessive K supply may not proportionally increase root development.