Auxin Application at the Flowering Stage of Rice Alleviates the Negative Impact of Heat Stress on Spikelet Fertility and Yield Attributes

Author:

Aryan Shafiqullah12ORCID,Gulab Gulbuddin12,Kakar Kifayatullah2,Habibi Nasratullah13ORCID,Amin Mohammad Wasif14ORCID,Sadat Mohammad Ismail2,Zahid Tayebullah2,Durani Asmatullah2,Baber Bakht Munir2,Safi Zabihullah2,Zerak Anwarulhaq2

Affiliation:

1. Department of International Agricultural Development, Graduate School of Agriculture, Tokyo University of Agriculture, Tokyo 156-8502, Japan

2. Faculty of Agriculture, Nangarhar University, Daronta 2601, Afghanistan

3. Faculty of Agriculture, Balkh University, Balkh 1702, Afghanistan

4. Faculty of Agriculture, Parwan University, Charikar 1102, Afghanistan

Abstract

The reproductive stage of rice is vulnerable to heat stress, which reduces spikelet fertility and yield. Auxin significantly influences reproductive development, hence the research aimed to enhance spikelet fertility and grain attributes in rice plants by exploring the application efficiency of Indole-3-acetic acid (IAA) and 1-naphthaleneacetic acid (NAA) under heat stress. This study investigated the effects of IAA (10 μmol L−1) and NAA (100 μmol L−1) on spikelet fertility rate in six rice genotypes during the flowering stage. Compared to the heat stress (HS) treatment, the spikelet production rate and grain yield per plant were higher by 61.16%, 37.25%, and 33.07%, and 72.84%, 44.48%, and 32.71% in control, HS + NAA, and HS + IAA treatments, respectively. In addition, panicle weight, primary branches number panicle−1, and 1000-grains weight were significantly (p < 0.05) improved with HS + IAA and HS + NAA application under heat stress conditions. Auxin application enhanced photosynthetic and transpiration rate, while contrarily, leaf temperature diminished. The higher photosynthetic rate showed positive relationships with spikelet fertility (r = 0.64) and yield plant−1 (r = 0.63). Additionally, leaf temperature had a strongly negative correlation (r = −0.81) with the spikelet fertility rate. The application of auxin increased the number of filled grains panicle−1, which showed a positive relationship (r = 0.75) with grain yield plant−1. The variation of spikelet fertility rate among genotypes was dependent on the variety tolerance rate. Overall, these findings indicate that exogenous auxin application can mitigate the negative impact of heat stress on rice and improve spikelet fertility and grain yield.

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference57 articles.

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